This paper presents numerical analysis of an in-plane resonant Nano-Electro-Mechanical (NEM) sensor based on mass-detection principle using a 3D FEM electromechanical simulation combined with a NEM/MOS hybrid circuit simulation. The self-assembled linker molecules are modeled simply by adding extra surface coating layer, and three different functionalization schemes are studied: top and bottom, only top and all-around configurations. We investigate the impacts of the coating layer mass change as well as stiffness change on the resonance frequency by varying thickness of the coating layer for all the configurations. The small signal AC analysis of the sensor is performed, and the effect of the coating layer on the output signal is studied. M...
Characterizing the fatigue and fracture properties of nanostructures is one of the most challenging ...
The principle of mass detection using carbon nanotube (CNT) resonators is based on the detection of ...
A ring electrode design that produces a uniform mass sensitivity distribution across a TSM device is...
This paper presents the In-Plane Resonant NEM (IP R-NEM) sensor based on the mass-detection principl...
This research is conducted as a part of EU FP7 project entitled NEMSIC (hybrid nanoelectro-mechanica...
With advances in nanotechnology, resonant sensors based on micro/nano electromechanical systems (M/N...
International audienceThis article presents a comprehensive study and design methodology of co-integ...
[[abstract]]Very high frequency (VHF) nanoelectromechanical systems (NEMS) provide unprecedented sen...
Nanoelectromechanical cantilevers have achieved unprecedented sensitivity in the detection of displa...
peer reviewedThis paper describes a hybrid mass sensing system comprising a QCM (quartz crystal micr...
It is the purpose of this paper to show expectations, challenges and initial steps concerning the re...
In the present work, mass and position sensitivity of a nanocantilever is simulated using finite ele...
The research presented herein focuses on the use of micro- and nanoelectromechanical systems (MEMS/N...
Mass sensors are commonly used for detecting explosives, nucleic acids, and proteins. In recent year...
We report a novel mass sensor based on detecting the luminescence from micro/nano electromechanical ...
Characterizing the fatigue and fracture properties of nanostructures is one of the most challenging ...
The principle of mass detection using carbon nanotube (CNT) resonators is based on the detection of ...
A ring electrode design that produces a uniform mass sensitivity distribution across a TSM device is...
This paper presents the In-Plane Resonant NEM (IP R-NEM) sensor based on the mass-detection principl...
This research is conducted as a part of EU FP7 project entitled NEMSIC (hybrid nanoelectro-mechanica...
With advances in nanotechnology, resonant sensors based on micro/nano electromechanical systems (M/N...
International audienceThis article presents a comprehensive study and design methodology of co-integ...
[[abstract]]Very high frequency (VHF) nanoelectromechanical systems (NEMS) provide unprecedented sen...
Nanoelectromechanical cantilevers have achieved unprecedented sensitivity in the detection of displa...
peer reviewedThis paper describes a hybrid mass sensing system comprising a QCM (quartz crystal micr...
It is the purpose of this paper to show expectations, challenges and initial steps concerning the re...
In the present work, mass and position sensitivity of a nanocantilever is simulated using finite ele...
The research presented herein focuses on the use of micro- and nanoelectromechanical systems (MEMS/N...
Mass sensors are commonly used for detecting explosives, nucleic acids, and proteins. In recent year...
We report a novel mass sensor based on detecting the luminescence from micro/nano electromechanical ...
Characterizing the fatigue and fracture properties of nanostructures is one of the most challenging ...
The principle of mass detection using carbon nanotube (CNT) resonators is based on the detection of ...
A ring electrode design that produces a uniform mass sensitivity distribution across a TSM device is...